Sandbox Reserved 1653: Difference between revisions

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==='''The different forces perceived by Piezo1'''===
==='''The different forces perceived by Piezo1'''===


Piezo1 is a [https://en.wikipedia.org/wiki/Mechanosensitive_channels mechanosensitive channel] which means, it can sense external mechanical forces such as fluid flow-induced shear stress, osmotic stress, and pressure-induced membrane stretch. Moreover, “studies have demonstrated wide expression of the Piezo1 channel that enables many different types of cells to sense a diversity of “outside-in” mechanical forces, including indentation, membrane stretch, shear stress, osmotic stress, ultrasound, and compression”.<ref name= "Adenosine"> DOI 10.3389/fphar.2019.01304</ref> Since Piezo1 channel could also be activated by traction forces, there are two different mechanisms that have been proposed to explain the mechanical activation of Piezo1 channel. These mechanisms are called “force-from-lipids” and “force-from-filaments”.<ref name= "Adenosine"> DOI 10.3389/fphar.2019.01304</ref>
Piezo1 is a [https://en.wikipedia.org/wiki/Mechanosensitive_channels mechanosensitive channel] which means, it can sense external mechanical forces such as fluid flow-induced shear stress, osmotic stress, and pressure-induced membrane stretch. Moreover, “studies have demonstrated wide expression of the Piezo1 channel that enables many different types of cells to sense a diversity of “outside-in” mechanical forces, including indentation, membrane stretch, shear stress, osmotic stress, ultrasound, and compression”.<ref name= "Adenosine"> DOI 10.3389/fphar.2019.01304</ref> Since Piezo1 channel could also be activated by traction forces, there are two different mechanisms that have been proposed to explain the mechanical activation of Piezo1 channel. These mechanisms are called “force-from-lipids” and “force-from-filaments”.<ref name= "Adenosine" />


For the “force-from-lipids” mechanism, membrane tension is induced by mechanical forces. This membrane tension leads to a reorganization of lipids within and surrounding the channel proteins. This reorganization of lipids results into membrane lipid-channel protein interactions that induce the channel to open. We can note that a recent study (Lin et al., 2019)<ref name= "Lin"> DOI 10.1038/s41586-019-1499-2 </ref> gave support to this mechanism.  
For the “force-from-lipids” mechanism, membrane tension is induced by mechanical forces. This membrane tension leads to a reorganization of lipids within and surrounding the channel proteins. This reorganization of lipids results into membrane lipid-channel protein interactions that induce the channel to open. We can note that a recent study (Lin et al., 2019)<ref name= "Lin"> DOI 10.1038/s41586-019-1499-2 </ref> gave support to this mechanism.  

Revision as of 14:13, 12 January 2021

Piezo 1

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References